Scientific Workflow Management -- For Whom?

作者: Silvia Olabarriaga , Gabrielle Pierantoni , Giuliano Taffoni , Eva Sciacca , Mahdi Jaghoori

DOI: 10.1109/ESCIENCE.2014.8

关键词:

摘要: Workflow management has been widely adopted by scientific communities as a valuable tool to carry out complex experiments. It allows for the possibility perform computations data analysis and simulations, whereas hiding details of infrastructures underneath. There are many workflow systems that offer large variety generic services coordinate execution workflows. Nowadays, there is trend extend functionality cover all possible requirements may arise from user community. However, multiple scenarios usage systems, involving various actors require different be supported these systems. In this paper we reflect about based on practical experience heavy users technology in three domains: Astrophysics, Heliophysics Biomedicine. We discuss regarding information provided system each profile, illustrate how fulfilled tools currently adopt. This contributes understanding properties future important increase their adoption scenarios.

参考文章(27)
Adam Barker, Jano van Hemert, Scientific workflow: a survey and research directions parallel processing and applied mathematics. pp. 746- 753 ,(2007) , 10.1007/978-3-540-68111-3_78
Ugo Becciani, Eva Sciacca, Alessandro Costa, Piero Massimino, Costantino Pistagna, Simone Riggi, Fabio Vitello, Catia Petta, Marilena Bandieramonte, Mel Krokos, Science Gateway technologies for the astrophysics community Concurrency and Computation: Practice and Experience. ,vol. 27, pp. 306- 327 ,(2015) , 10.1002/CPE.3255
E. Sciacca, M. Bandieramonte, U. Becciani, A. Costa, M. Krokos, P. Massimino, C. Petta, C. Pistagna, S. Riggi, F. Vitello, VisIVO Workflow-Oriented Science Gateway for Astrophysical Visualization parallel, distributed and network-based processing. pp. 164- 171 ,(2013) , 10.1109/PDP.2013.31
Giuliano Taffoni, Davide Maino, Claudio Vuerli, Giuliano Castelli, Riccardo Smareglia, Andrea Zacchei, Fabio Pasian, Enabling Grid technologies for Planck space mission Future Generation Computer Systems. ,vol. 23, pp. 189- 200 ,(2007) , 10.1016/J.FUTURE.2006.04.020
Hoang Nguyen, David Abramson, WorkWays: Interactive workflow-based science gateways international conference on e-science. pp. 1- 8 ,(2012) , 10.1109/ESCIENCE.2012.6404428
Péter Kacsuk, Krisztian Karoczkai, Gabor Hermann, Gergely Sipos, József Kovács, WS-PGRADE: Supporting parameter sweep applications in workflows workflows in support of large-scale science. pp. 1- 10 ,(2008) , 10.1109/WORKS.2008.4723955
Jia Yu, Rajkumar Buyya, A Taxonomy of Workflow Management Systems for Grid Computing Journal of Grid Computing. ,vol. 3, pp. 171- 200 ,(2005) , 10.1007/S10723-005-9010-8
Marlon Pierce, Suresh Marru, Raminder Singh, Archit Kulshrestha, Karthik Muthuraman, Open grid computing environments Proceedings of the 2010 TeraGrid Conference on - TG '10. pp. 16- ,(2010) , 10.1145/1838574.1838590
Shayan Shahand, Mark Santcroos, Antoine H. C. van Kampen, Sílvia Delgado Olabarriaga, A Grid-Enabled Gateway for Biomedical Data Analysis grid computing. ,vol. 10, pp. 725- 742 ,(2012) , 10.1007/S10723-012-9233-4
Mohammad Mahdi Jaghoori, Allard J. Van Altena, Boris Bleijlevens, Silvia D. Olabarriaga, A Grid-Enabled Virtual Screening Gateway 2014 6th International Workshop on Science Gateways. pp. 24- 29 ,(2014) , 10.1109/IWSG.2014.11